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A photo-switchable molecular capsule: sequential photoinduced processes. | LitMetric

AI Article Synopsis

  • - The study involves the self-assembly of a heteropolyoxomolybdate compound and a pyridyl-based diarylethene, resulting in a molecular capsule that is photo-active, specifically designed for efficient light-induced processes.
  • - The arrangement of the diarylethene ligands is influenced by the chemistry of the metal oxide, allowing only a specific form to bond with the polyoxometalate, and the stability of this assembly in solution is confirmed by various spectroscopic methods.
  • - Research reveals a photochemical sequence where light triggers the closing of the diarylethene structure, followed by electron transfer to the polyoxometalate, supported by sophisticated analyses and a setup for measuring quantum yields.

Article Abstract

The metastable trilacunary heteropolyoxomolybdate [PMoO(py)] - {PMo}; py = pyridine) and the ditopic pyridyl bearing diarylethene (DAE) (CHNFS) self-assemble a facile ligand replacement methodology to yield the photo-active molecular capsule [(PMoO)(DAE)]. The spatial arrangement and conformation of the three DAE ligands are directed by the surface chemistry of the molecular metal oxide precursor with exclusive ligation of the photo-active antiparallel rotamer to the polyoxometalate (POM) while the integrity of the assembly in solution has been verified by a suite of spectroscopic techniques. Electrocyclisation of the three DAEs occurs sequentially and has been investigated using a combination of steady-state and time-resolved spectroscopies with the discovery of a photochemical cascade whereby rapid photoinduced ring closure is followed by electron transfer from the ring-closed DAE to the POM in the latent donor-acceptor system on subsequent excitation. This interpretation is also supported by computational and detailed spectroelectrochemical analysis. Ring-closing quantum yields were also determined using a custom quantum yield determination setup (QYDS), providing insight into the impact of POM coordination on these processes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9710229PMC
http://dx.doi.org/10.1039/d2sc04613jDOI Listing

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